A Spatiotemporal Organ-Wide Gene Expression and Cell Atlas of the Developing Human Heart
Author(s) -
Michaela Asp,
Stefania Giacomello,
Ludvig Larsson,
Chenglin Wu,
Daniel Fürth,
Xiaoyan Qian,
Eva Wärdell,
Joaquín Custodio,
Johan Reimegård,
Fredrik Salmén,
Cecilia Österholm,
Patrik L. Ståhl,
Erik Sundström,
Elisabet Åkesson,
Olaf Bergmann,
Magda Bienko,
Agneta MånssonBroberg,
Mats Nilsson,
Christer Sylvén,
Joakim Lundeberg
Publication year - 2019
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2019.11.025
Subject(s) - biology , embryonic stem cell , gene expression , transcriptome , cell type , computational biology , morphogenesis , gene , regulation of gene expression , gene expression profiling , embryonic heart , genetics , cell , microbiology and biotechnology
The process of cardiac morphogenesis in humans is incompletely understood. Its full characterization requires a deep exploration of the organ-wide orchestration of gene expression with a single-cell spatial resolution. Here, we present a molecular approach that reveals the comprehensive transcriptional landscape of cell types populating the embryonic heart at three developmental stages and that maps cell-type-specific gene expression to specific anatomical domains. Spatial transcriptomics identified unique gene profiles that correspond to distinct anatomical regions in each developmental stage. Human embryonic cardiac cell types identified by single-cell RNA sequencing confirmed and enriched the spatial annotation of embryonic cardiac gene expression. In situ sequencing was then used to refine these results and create a spatial subcellular map for the three developmental phases. Finally, we generated a publicly available web resource of the human developing heart to facilitate future studies on human cardiogenesis.
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